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Sideband suppression in free electron lasers using a grating rhomb

机译:使用光栅菱形抑制自由电子激光器的边带

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The phase shift produced by a grating rhomb is included in free-electron laser (FEL) pulse calculations to investigate whether or not grating rhombs can be used to suppress the sideband instability. The idea is that because the group travel time through a rhomb is an increasing function of the laser wavelength, an FEL oscillator can be designed such that the optical pulse at a chosen central wavelength and the pulse of electrons overlap spatially when they enter the wiggler. Over many passes, light in a small bandwidth about the chosen wavelength receives the greatest amplification because it overlaps the electrons, and light at sideband instability wavelengths that does not overlap the electrons is suppressed by losses in the oscillator cavity. For a 5-m tapered wiggler, the range in rhomb dispersion and cavity loss that yields acceptable FEL performance is defined. At low values of cavity loss, for example 15%, a wide range of rhomb dispersion exists for which both the sideband instability is largely suppressed and the energy extracted from the electrons is high. At larger values of cavity loss, for example 30%, a critical value for rhomb dispersion exists below which the laser pulse is compressed by the rhomb, leading to reduced energy extraction.
机译:光栅菱形产生的相移包含在自由电子激光(FEL)脉冲计算中,以研究是否可以使用光栅菱形来抑制边带不稳定性。这个想法是,因为通过菱形的群行进时间是激光波长的增加函数,所以可以设计FEL振荡器,使得选定的中心波长处的光脉冲和电子脉冲进入摆动器时在空间上重叠。在许多遍中,选定波长附近的小带宽光由于与电子重叠而受到最大放大,而不与电子重叠的边带不稳定性波长的光被振荡器腔中的损耗所抑制。对于5米的锥形摆动器,定义了可以接受的FEL性能的菱形色散和腔损耗范围。在低的腔损耗值(例如15%)下,存在较大的菱形色散范围,为此,边带不稳定性被大大抑制,并且从电子中提取的能量很高。在较大的腔损耗值(例如30%)下,存在菱形色散的临界值,在该临界值以下,菱形压缩激光脉冲,导致能量提取减少。

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